One way to remove nitrogen oxide (NO) from smoke-stack emissions is to react it with ammonia. 4 NH 3 ( g ) + 6 NO ( g ) → 5 N 2 ( g ) + 6 H 2 O ( l ) Calculate (a) the mass of water produced from 0.839 mol of ammonia. (b) the mass of NO required to react with 3.402 mol of ammonia. (c) the mass of ammonia required to produce 12.0 g of nitrogen gas. (d) the mass of ammonia required to react with 115 g of NO.
One way to remove nitrogen oxide (NO) from smoke-stack emissions is to react it with ammonia. 4 NH 3 ( g ) + 6 NO ( g ) → 5 N 2 ( g ) + 6 H 2 O ( l ) Calculate (a) the mass of water produced from 0.839 mol of ammonia. (b) the mass of NO required to react with 3.402 mol of ammonia. (c) the mass of ammonia required to produce 12.0 g of nitrogen gas. (d) the mass of ammonia required to react with 115 g of NO.
Record the amounts measured and
calculate the percent yield for Part 2
in the table below.
Dicyclopentadiene
measured in volume
Cyclopentadiene
measured in grams
0
Measured
Calculated
Mol
Yield
Mass (g) or Volume (mL)
Mass (g) or Volume (ml)
0.6
2.955
Part 2 Measurements and Results
Record the amounts measured and calculate the percent yield for Part 2 in the table below.
0.588
0.0044
2.868
0.0434
N/A
Table view List view
Measured
Calculated
Mol
$ Yield
Melting Point (C)
Mass (g) or Volume (ml)
Mass (g) or Volume (ml.)
Cyclopentadiene
0.1
0.08
0.001189
measured in volume
Maleic Anhydride
0.196
N/A
cis-norbornene-5,6-endo-
dicarboxylic anhydride
0.041
0.0002467
N/A
N/A
N/A
0.002
N/A
N/A
128
Draw the condensed structural formula and line-angle formula for each:
2,3-dimethylheptane
3-bromo-2-pentanol
3-isopropyl-2-hexene
4-chlorobutanoic acid
Record the IUPAC names for each of the structures shown below.
a)
b)
c)
OH
d)
OH
e)
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